When it comes to process execution, what is the advantage of first allocating it to the I/O queue and then pushing it to the CPU when it is ready? What, in your opinion, will happen if the I/O is not completed correctly? Is the CPU burst going to be affected? What do you mean?
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When it comes to process execution, what is the advantage of first allocating it to the I/O queue and then pushing it to the CPU when it is ready? What, in your opinion, will happen if the I/O is not completed correctly? Is the CPU burst going to be affected? What do you mean?
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- How does pipelining improve CPU efficiency? What’s the potential effect on pipelining’s efficiency when executing a conditional BRANCH instruction? What techniques can be used to make pipelining more efficient when executing conditional BRANCH instructions?What is the benefit of assigning process execution to the I/O queue first and then pushing it to the CPU when it's ready? What do you think will happen if the I/O is interrupted? Will the CPU burst be affected? How so?When allocating process execution to the I/O queue, what are the advantages of doing so first? If the I/O is interrupted, what do you believe will happen? Will this have an impact on the CPU's burst rate? What do you mean by that?
- When an interrupt occurs, the CPU pauses what it is doing and returns to work on serving the next process. Is a postponement of the execution required? Instead, how about simply carrying out the operation and leaving the rest to us?There are a number of benefits that come from the practise of first delegating the execution of a process to an input/output queue and then, once the CPU is ready, handing control back to it. Who knows what may occur if the input/output is suddenly stopped? Will there be an impact on the burst of the central processing unit? How exactly does this hold true?An operation is considered to have been successfully stopped when the central processing unit (CPU) accepts the interruption and proceeds on to the next job. If the process is already underway, then why is it impossible to halt it? Since the execution and cleaning can wait till we've resolved the problem, there's no reason not to take care of them right now.
- When a CPU interrupt occurs, the process is stopped and acknowledged, and the CPU moves on to the next one.Why shouldn't the process be stopped while it's still in progress?Why can't we just finish the execution and clean up instead of dealing with the problem after the fact?when a CPU interrupt is sent, the operation is stopped and is acknowledged, the CPU switches to handling the new one. Why shouldn't the process be stopped when it is executing? Instead of dealing with the problem after the fact, why can't we just finish the execution and cleanup?When an operation is stopped and accepted by the CPU, it goes on to the next job, a CPU interrupt is sent. Why can't the process be halted if it's already running? The execution and cleanup can wait till we've resolved the problem, so why not start now?
- As soon as an interrupt is received, the CPU suspends the currently executing process and proceeds to service the interrupt. Why should the executing process be suspended? Why can’t we, instead, finish the executing process and handle the interrupt afterward?When a CPU interrupt is issued, the processor pauses what it is doing and processes the signal. Why should the operation be halted so that this action may be carried out? Let's take care of the interrupting process first, then complete the executing process afterwards. explain?